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The machinery underlying malaria parasite virulence is conserved between rodent and human malaria parasites

机译:保留疟疾寄生虫毒力的基本机制 在啮齿动物和人类疟疾寄生虫之间

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摘要

Sequestration of red blood cells infected with the human malaria parasite Plasmodium falciparum in organs such as the brain is considered important for pathogenicity. A similar phenomenon has been observed in mouse models of malaria, using the rodent parasite Plasmodium berghei, but it is unclear whether the P. falciparum proteins known to be involved in this process are conserved in the rodent parasite. Here we identify the P. berghei orthologues of two such key factors of P. falciparum, SBP1 and MAHRP1. Red blood cells infected with P. berghei parasites lacking SBP1 or MAHRP1a fail to bind the endothelial receptor CD36 and show reduced sequestration and virulence in mice. Complementation of the mutant P. berghei parasites with the respective P. falciparum SBP1 and MAHRP1 orthologues restores sequestration and virulence. These findings reveal evolutionary conservation of the machinery underlying sequestration of divergent malaria parasites and support the notion that the P. berghei rodent model is an adequate tool for research on malaria virulence.
机译:人们认为,将诸如人疟原虫恶性疟原虫感染的红细胞隔离在大脑等器官中对于致病性很重要。使用啮齿动物寄生虫伯氏疟原虫在疟疾的小鼠模型中观察到了类似的现象,但是尚不清楚已知与该过程有关的恶性疟原虫蛋白质是否在啮齿动物寄生虫中保守。在这里,我们确定了恶性疟原虫的两个这样的关键因素伯氏疟原虫直系同源基因SBP1和MAHRP1。感染了缺乏SBP1或MAHRP1a的伯氏疟原虫寄生虫感染的红细胞无法结合内皮受体CD36,并且在小鼠中的螯合和毒力降低。突变的伯氏疟原虫寄生虫与各自的恶性疟原虫SBP1和MAHRP1直系同源物互补,可恢复螯合和毒力。这些发现揭示了螯合不同的疟原虫的基本机制的进化保守性,并支持了伯氏疟原虫啮齿动物模型是研究疟疾毒力的适当工具的观点。

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